首页> 外文期刊>Microwave and optical technology letters >TRANSMISSION THROUGH AND WAVE GUIDANCE ON METAL PLATES PERFORATED BY PERIODIC ARRAYS OF THROUGH-HOLES OF SUBWAVELENGTH COAXIAL CROSS-SECTION
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TRANSMISSION THROUGH AND WAVE GUIDANCE ON METAL PLATES PERFORATED BY PERIODIC ARRAYS OF THROUGH-HOLES OF SUBWAVELENGTH COAXIAL CROSS-SECTION

机译:次波长同轴截面通孔的周期性阵阵渗透的金属板的透过率和波导

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摘要

Perfect electrically conducting (PEC) plates perforated by doubly periodic arrays of through-holes of subwavelength coaxial cross-section permit enhanced transmission of plane waves and support surface wave guidance. The transmission enhancement is attributed to coupling of free-space fields to TEM and TE{sub}11 modal fields in holes and occurs via two distinct mechanisms. The first couples incident fields to local resonances (cavity modes) supported by individual holes. The second couples scattered fields (diffraction modes) to global resonances (surface waves). The surface waves arise due to strong interactions between the holes and can have a large propagation wavenumber. The presented PEC model is adequate in the microwave and terahertz regimes and insights into related wave phenomena at optical frequencies.
机译:完美的导电(PEC)板穿孔有亚周期同轴横截面的双倍通孔阵列,可以增强平面波的传输并支持表面波导引。传输增强归因于自由空间场与空穴中TEM和TE {sub} 11模态场的耦合,并通过两种不同的机制发生。首先将入射场耦合到由单个孔支持的局部共振(腔模)。第二个将散射场(衍射模式)耦合到整体共振(表面波)。表面波由于孔之间的强相互作用而产生,并且可以具有大的传播波数。提出的PEC模型在微波和太赫兹状态下是足够的,并且可以洞察光频率下的相关波现象。

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